Published July 30, 2024 | Version v1
Journal article Open

Fault-Tolerant Operation of Bosonic Qubits with Discrete-Variable Ancillae

  • 1. University of Chicago

Description

Fault-tolerant quantum computation with bosonic qubits often necessitates the use of noisy discrete-variable ancillae. In this work, we establish a comprehensive and practical fault-tolerance framework for such a hybrid system and synthesize it with fault-tolerant protocols by combining bosonic quantum error correction (QEC) and advanced quantum control techniques. We introduce essential building blocks of error-corrected gadgets by leveraging ancilla-assisted bosonic operations using a generalized variant of path-independent quantum control. Using these building blocks, we construct a universal set of error-corrected gadgets that tolerate a single-photon loss and an arbitrary ancilla fault for four-legged cat qubits. Notably, our construction requires only dispersive coupling between bosonic modes and ancillae, as well as beam-splitter coupling between bosonic modes, both of which have been experimentally demonstrated with strong strengths and high accuracy. Moreover, each error-corrected bosonic qubit is comprised of only a single bosonic mode and a three-level ancilla, featuring the hardware efficiency of bosonic QEC in the full fault-tolerant setting. We numerically demonstrate the feasibility of our schemes using current experimental parameters in the circuit-QED platform. Finally, we present a hardware-efficient architecture for fault-tolerant quantum computing by concatenating the four-legged cat qubits with an outer qubit code utilizing only beam-splitter couplings. Our estimates suggest that the overall noise threshold can be reached using existing hardware. These developed fault-tolerant schemes extend beyond their applicability to four-legged cat qubits and can be adapted for other rotation-symmetrical codes, offering a promising avenue toward scalable and robust quantum computation with bosonic qubits.

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PhysRevX.14.031016.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevX.14.031016
Other
oai:uchicago.tind.io:13087

Funding

Army Research Office
W911NF-23-1-0077
Army Research Office
W911NF-21-1-0325
Army Research Office
FA9550-19-1-0399
Army Research Office
FA9550-21-1-0209
Army Research Office
FA9550-23-1-0338
DARPA
HR0011-24-9-0359
DARPA
HR0011-24-9-0361
National Science Foundation
OMA-1936118
National Science Foundation
ERC-1941583
National Science Foundation
OMA-2137642
National Science Foundation
OSI-2326767
National Science Foundation
CCF-2312755
NTT Research
Samsung GRO
Packard Foundation
2020-71479
Marshall and Arlene Bennett Family Research Program
U.S. Department of Energy
University of Chicago

UChicago Information

Division(s)
Pritzker School of Molecular Engineering